Subtelomeric 5-enolpyruvylshikimate-3-phosphate synthase copy number variation confers glyphosate resistance in Eleusine indica
文献类型: 外文期刊
第一作者: Zhang, Chun
作者: Zhang, Chun;Tian, Xingshan;Johnson, Nicholas A.;Hall, Nathan;Patterson, Eric L.;Yu, Qin
作者机构:
期刊名称:NATURE COMMUNICATIONS ( 影响因子:16.6; 五年影响因子:17.0 )
ISSN:
年卷期: 2023 年 14 卷 1 期
页码:
收录情况: SCI
摘要: Genomic structural variation (SV) has profound effects on organismal evolution; often serving as a source of novel genetic variation. Gene copy number variation (CNV), one type of SV, has repeatedly been associated with adaptive evolution in eukaryotes, especially with environmental stress. Resistance to the widely used herbicide, glyphosate, has evolved through target-site CNV in many weedy plant species, including the economically important grass, Eleusine indica (goosegrass); however, the origin and mechanism of these CNVs remain elusive in many weed species due to limited genetic and genomic resources. To study this CNV in goosegrass, we present high-quality reference genomes for glyphosate-susceptible and -resistant goosegrass lines and fine-assembles of the duplication of glyphosate's target site gene 5-enolpyruvylshikimate-3-phosphate synthase (EPSPS). We reveal a unique rearrangement of EPSPS involving chromosome subtelomeres. This discovery adds to the limited knowledge of the importance of subtelomeres as genetic variation generators and provides another unique example for herbicide resistance evolution. Resistance to herbicide glyphosate can be evolved trough copy number variation (CNV) of its target gene EPSPS in goosegrass. Here, the authors assemble the genomes of glyphosate susceptible and resistance lines and provide evidence of sub-telomeric-repeat driven CNV of EPSPS could lead to glyphosate resistance.
分类号:
- 相关文献
作者其他论文 更多>>
-
Layered Double Hydroxides Reduce the Availability of Cadmium and Lead in Soil and the Content of Cadmium and Lead in Grain
作者:Yu, Peng;Li, Shun;Zhang, Chun;Huang, Wei;Qin, Yilin;Wang, Zhiguo;Liao, Yulin;Li, Jianglin;Wang, Zhiguo
关键词:Layered double hydroxides; synergistic remediation; cadmium(cd) and lead(pb); soil remediation; practical application
-
Multiple Metabolic Enzymes Can Be Involved in Cross-Resistance to 4-Hydroxyphenylpyruvate-Dioxygenase-Inhibiting Herbicides in Wild Radish
作者:Lu, Huan;Liu, Yingze;Li, Mengshuo;Qiang, Sheng;Lu, Huan;Han, Heping;Yu, Qin;Powles, Stephen;Zhou, Fengyan;Nyporko, Alex
关键词:RNA sequencing; Rr2ODD1; herbicide metabolic resistance
-
Ethylene controls cambium stem cell activity via promoting local auxin biosynthesis
作者:Yu, Qin;Cheng, Chenxia;Zhou, Xiaofeng;Yang, Chun;Zhou, Yingying;Gao, Junping;Ma, Nan;Cheng, Chenxia;Li, Yonghong;Hu, Yingchun;Soliman, Tarek M. A.;Zhang, Hao;Wang, Qigang;Wang, Huichun;Jiang, Cai-Zhong;Jiang, Cai-Zhong;Gan, Su-Sheng
关键词:auxin; cambium; ethylene; HD-ZIP I transcription factor; Rosa hybrida
-
Metabolic resistance to acetolactate synthase inhibitors in Beckmannia syzigachne: identification of CYP81Q32 and its transcription regulation
作者:Wang, Junzhi;Qi, Jiale;Fang, Yuhang;Bai, Lianyang;Pan, Lang;Wang, Junzhi;Bai, Lianyang;Bai, Lianyang;Nyporko, Alex;Yu, Qin
关键词:cytochrome P450s; mesosulfuron-methyl; enhanced herbicide metabolism; transcription factor
-
Temperature influences glyphosate efficacy on glyphosate-resistant and -susceptible goosegrass (Eleusine indica)
作者:Guo, Wenlei;Zhang, Chun;Wang, Siwei;Zhang, Taijie;Tian, Xingshan;Guo, Wenlei;Zhang, Chun;Wang, Siwei;Zhang, Taijie;Tian, Xingshan
关键词:low temperature; glyphosate; control efficacy; shikimate; absorption; translocation
-
Metabolic pathways modulated by coumarin to inhibit seed germination and early seedling growth in Eleusine indica
作者:Zhang, Tai-Jie;Ma, Zhao;Tian, Xing-Shan;Guo, Wen-Lei;Zhang, Chun;Ma, Zhao;Ma, Hong-Ju
关键词:Amino acids; Coumarin; Eleusine indica; Germination; Metabolites
-
ZmTIFY16, a novel maize TIFY transcription factor gene, promotes root growth and development and enhances drought and salt tolerance in Arabidopsis and Zea mays
作者:Zhang, Chun;Yang, Ruijia;Zhang, Tongtong;Zheng, Dengyu;Li, Xianglong;Zhang, Zhongbao B. B.;Wu, Zhongyi Y. Y.;Yang, Ruijia;Zhang, Tongtong;Li, Legong G. G.
关键词:Maize; Root growth; Salt tolerance; Transcription factor; ZmTIFY16